Web
Video
Texts
Audio
Projects
About
Account
TVNews
OpenLibrary
Home
donate
|
Forums
|
FAQs
|
Contributions
|
Terms, Privacy, & Copyright
|
Contact
|
Volunteer Positions
|
Jobs
|
Bios
Search:
All Media Types
Wayback Machine
Moving Images
Animation & Cartoons
Arts & Music
Community Video
Computers & Technology
Cultural & Academic Films
Ephemeral Films
Movies
News & Public Affairs
Prelinger Archives
Spirituality & Religion
Sports Videos
Television
Videogame Videos
Vlogs
Youth Media
Texts
American Libraries
Canadian Libraries
Universal Library
Community Texts
Project Gutenberg
Children's Library
Biodiversity Heritage Library
Additional Collections
Audio
Audio Books & Poetry
Community Audio
Computers & Technology
Grateful Dead
Live Music Archive
Music & Arts
Netlabels
News & Public Affairs
Non-English Audio
Podcasts
Radio Programs
Spirituality & Religion
Education
Math Lectures from MSRI
Chinese University Lectures
UChannel
MIT OpenCourseWare
AP Courses from MITE
Forums
FAQs
Advanced Search
Anonymous User
(
login
or
join us
)
Upload
Search Results
Results:
1 through 1 of
1
(0.001 secs)
You searched for:
subject:"Scientific computing: Fast Fourier Transform"
Advanced search
MIT18.086S06
- MIT OpenCourseWare
This graduate-level course is a continuation of Mathematical Methods for Engineers I (18.085). Topics include numerical methods; initial-value problems; network flows; and optimization.
Keywords:
Scientific computing: Fast Fourier Transform
;
finite differences
;
finite elements
;
spectral method
;
numerical linear algebra
;
Complex variables and applications
;
Initial-value problems: stability or chaos in ordinary differential equations
;
wave equation versus heat equation
;
conservation laws and shocks
;
dissipation and dispersion
;
Optimization: network flows
;
linear programming
;
Scientific computing: Fast Fourier Transform
;
finite differences
;
finite elements
;
spectral method
;
numerical linear algebra
;
Complex variables and applications
;
Initial-value problems: stability or chaos in ordinary differential equations
;
wave equation versus heat equation
;
conservation laws and shocks
;
dissipation and dispersion
;
Optimization: network flows
;
linear programming
Downloads:
20,378
Sort results by:
> Relevance
Average rating
Download count
Date
Date added
Group results by:
> Relevance
Mediatype
Collection
Refine your search
File formats
MP3 files
Any audio file
Movie files
Images
Related collections
mit_ocw
Related creators
MIT OpenCourseWare
Related mediatypes
movies
Options
Turn off thumbnails
Show 'source' field
Terms of Use (10 Mar 2001)